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首页> 外文期刊>New biotechnology >Vegetation, soil and hydrology management influence denitrification activity and the composition of nirK-type denitrifier communities in a newly afforested riparian buffer
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Vegetation, soil and hydrology management influence denitrification activity and the composition of nirK-type denitrifier communities in a newly afforested riparian buffer

机译:植被,土壤和水文管理影响新造林的河岸缓冲带的反硝化活性和nirK型反硝化器群落的组成

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Soil microbial community composition and activity could be affected by suitable manipulation of the environment they live in. If correctly applied such an approach could become a very effective way to remediate excess of chemicals. The concentration of nitrogen, especially nitrate deriving from agricultural managements, is generally found to increase in water flow. Therefore, by forcing the water flow through a buffer strip specifically designed and possibly afforested with suitable plant species, may result effective in reducing high nitrogen contents. The management of a riparian buffer may definitely affect the soil microbial activities, including denitrification, as well as the composition of the community.The present study reports on the changes occurred in terms of denitrifying microbial community composition, as compared to that of a neighbouring agricultural area, as a consequence of hydraulic management coupled to the suspension of farming practices and to the development of the woody and herbaceous vegetation.With this aim, denitrification was repeatedly measured and the data obtained were related to those deriving from a specific analysis of bacterial groups involved in denitrification. nirK, encoding for nitrite reductase, an enzyme essential for the conversion of nitrite to nitric oxide and considered the key step in the denitrification process, was chosen as the target gene.The main results obtained indicated that denitrification activity changes in riparian buffer as compared to agricultural soil and it is strongly influenced by carbon availability and soil depth. Although no significant differences on the community composition between superficial (0-15. cm) and medium (40-55. cm) layers were observed, the nirK-type denitrifier community was shown to significantly differ between riparian and agricultural soils in both surface and medium layers.
机译:土壤微生物群落组成和活性可能会受到对其所居住环境的适当控制而受到影响。如果正确应用,这种方法将成为补救过量化学物质的非常有效的方法。通常发现,氮的浓度,特别是来自农业经营的硝酸盐的浓度会增加水流量。因此,通过迫使水流过专门设计的缓冲带并可能在适当的植物种类上进行绿化,可以有效降低高氮含量。河岸缓冲液的管理肯定会影响土壤微生物活动,包括反硝化作用以及群落组成。本研究报告了与邻近农业相比,反硝化微生物群落组成发生的变化。由于进行了水力管理,再加上农耕活动的中止以及木本和草本植物的生长,因此对该区域进行了反复的反硝化测量,所得数据与对细菌群体进行特定分析得出的数据有关参与反硝化。 nirK编码亚硝酸还原酶(一种将亚硝酸盐转化为一氧化氮所必需的酶,被认为是反硝化过程中的关键步骤),作为目标基因,获得的主要结果表明,河岸缓冲液中的反硝化活性与农业土壤,它受到碳的有效性和土壤深度的强烈影响。尽管在表层(0-15。cm)和中层(40-55。cm)层之间的群落组成没有显着差异,但在河岸和农业土壤上,nirK型反硝化菌群落在表面和土壤上都存在显着差异。中层。

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